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Adsorptive removal of nitrogen-containing compounds from fuel by metal-organic frameworks 被引量:5
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作者 Zhaoyang Wang Zhiguo Sun +1 位作者 Linghao Kong Gang Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2013年第6期869-875,共7页
The adsorptive denitrogenation from fuels over three metal-organic frameworks(MIL-96(Al),MIL-53(Al)and MIL-101(Cr))was studied by batch adsorption experiments.Four nitrogen-containing compounds(NCCs)pyridine,pyrrole,q... The adsorptive denitrogenation from fuels over three metal-organic frameworks(MIL-96(Al),MIL-53(Al)and MIL-101(Cr))was studied by batch adsorption experiments.Four nitrogen-containing compounds(NCCs)pyridine,pyrrole,quinoline and indole were used as model NCCs in fuels to study the adsorption mechanism.The physicochemical properties of the adsorbents were characterized by XRD,N2physical adsorption,FT-IR spectrum and Hammett indicator method.The metal-organic frameworks(MOFs),especially the MIL-101(Cr)containing Lewis acid sites as well as high specific surface area,can adsorb large quantities of NCCs from fuels.In addition,the adsorptive capacity over MIL-101(Cr)will be different for NCCs with different basicity.The stronger basicity of the NCC is,the more it can be absorbed over MIL-101(Cr).Furthermore,pore size and shape also affect the adsorption capacity for a given adsorbate,which can be proved by the adsorption over MIL-53(Al)and MIL-96(Al).The pseudo-second-order kinetic model and Langmuir equation can be used to describe kinetics and thermodynamics of the adsorption process,respectively.Finally,the regeneration of the used adsorbent has been conducted successfully by just washing it with ethanol. 展开更多
关键词 metal-organic framework nitrogen-containing compound adsorptive denitrogenation denitrogenation kinetics denitrogenation thermodynamics
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Metal-organic frameworks for highly efficient oxygen electrocatalysis 被引量:3
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作者 Xiaobo He Fengxiang Yin +2 位作者 Hao Wang Biaohua Chen Guoru Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第2期207-227,共21页
Metal‐organic frameworks(MOFs)are a series of highly porous crystalline materials,which are built from inorganic metal nodes and organic linkers through coordination bonds.Their unique porous structural features(such... Metal‐organic frameworks(MOFs)are a series of highly porous crystalline materials,which are built from inorganic metal nodes and organic linkers through coordination bonds.Their unique porous structural features(such as high porosity,high surface areas,and highly ordered nanoporous structures)and designable structures and compositions have facilitated their use in gas capture,separation,catalysis,and energy storage and conversion.Recently,the design and synthesis of pure MOFs and their derivatives have opened new routes to develop highly efficient electrocatalysts toward oxygen reduction reactions(ORR)and oxygen evolution reactions(OER),which are the core electrode reactions in many energy storage and conversion techniques,such as metal‐air batteries and fuel cells.This review first discusses recent progress in the synthesis and the electrocatalytic applications of pure MOF‐based electrocatalysts toward ORR or OER,including pure MOFs,MOFs decorated with active species,and MOFs incorporated with conductive materials.The following section focuses on the advancements of the design and preparation of various MOF‐derived materials-such as inorganic nano‐(or micro‐)structures/porous carbon composites,pure porous carbons,pure inorganic nano‐(or micro‐)structured materials,and single‐atom electrocatalysts-and their applications in oxygen electrocatalysis.Finally,we present a conclusion and an outlook for some general design strategies and future research directions of MOF‐based oxygen electrocatalysts. 展开更多
关键词 metalorganic frameworks Porous materials ELECTROCATALYSIS Oxygen reduction reaction Oxygen evolution reaction Energy storage and conversion
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Industrial Outlook on Zeolites and Metal Organic Frameworks 被引量:9
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作者 Bilge YILMAZ Natalia TRUKHAN Ulrich MLLER 《催化学报》 SCIE EI CAS CSCD 北大核心 2012年第1期3-10,共8页
水晶的 nanoporous 材料在工业化学服务众多的枢轴的功能。他们为工业应用程序提供关键特征,例如高表面区域,一致的孔,互连的毛孔 / 隧道系统,可存取的毛孔卷,高吸附能力,离子交换能力,提高的催化活动,和形状 / 尺寸选择。作为 ... 水晶的 nanoporous 材料在工业化学服务众多的枢轴的功能。他们为工业应用程序提供关键特征,例如高表面区域,一致的孔,互连的毛孔 / 隧道系统,可存取的毛孔卷,高吸附能力,离子交换能力,提高的催化活动,和形状 / 尺寸选择。作为 nanoporous 材料的一个生长得很好的家庭,沸石具有为化学、石油化学的工业的重要重要性。多孔的材料的一个新兴的班叫了器官的框架(MOF ) 也在各种各样的应用为诺言提供的金属。沸石和 MOF 能在为我们的工业化社会的未来是批评的地里起重要作用。在为原料变化的探索,沸石用作向基础化学药品提供要求的形状 / 尺寸选择的催化剂。在转移进象氢那样的另外的交通燃料的全球努力, MOF 用作精力存储媒介。在对环境污染的战斗,沸石不仅参加有害物质的俘获和消退,而且为许多工业过程提供环境地良性的选择。在这评论,为现在和将来的应用的沸石和 MOF 的合成和利用上的一个工业观点被介绍。 展开更多
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Plasma-assisted Co/Zr-metal organic framework catalysis of CO_(2)hydrogenation:influence of Co precursors
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作者 Yanqin LI Jing ZHAO +4 位作者 Decai BU Xulei ZHANG Teng PENG Lanbo DI Xiuling ZHANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第5期104-110,共7页
In this study,Co/Zr-metal organic framework(MOF)precursors were obtained by a roomtemperature liquid-phase precipitation method and the equivalent-volume impregnation method,respectively,using a Zr-MOF as the support,... In this study,Co/Zr-metal organic framework(MOF)precursors were obtained by a roomtemperature liquid-phase precipitation method and the equivalent-volume impregnation method,respectively,using a Zr-MOF as the support,and Co/Zr-MOF-M and Co/Zr-MOF-N catalysts were prepared after calcination in a hydrogen-argon mixture gases(VAr:V_(H_(2))=9:1)at 350℃for 2 h.The catalytic activities of the prepared samples for CO_(2)methanation under atmosphericpressure cold plasma were studied.The results showed that Co/Zr-MOF-M had a good synergistic effect with cold plasma.At a discharge power of 13.0 W,V_(H_(2)):VCO_(2)=4:1 and a gas flow rate of 30 ml·min^(-1),the CO_(2)conversion was 58.9%and the CH4 selectivity reached 94.7%,which was higher than for Co/Zr-MOF-N under plasma(CO_(2)conversion 24.8%,CH4 selectivity 9.8%).X-ray diffraction,scanning electron microscopy,transmission electron microscopy,N_(2)adsorption and desorption(Brunauer-Emmett-Teller)and x-ray photoelectron spectroscopy analysis results showed that Co/Zr-MOF-M and Co/Zr-MOF-N retained a good Zr-MOF framework structure,and the Co oxide was uniformly dispersed on the surface of the Zr-MOF.Compared with Co/Zr-MOF-N,the Co/Zr-MOF-M catalyst has a larger specific surface area and higher Co^(2+)/Cototaland Co/Zr ratios.Additionally,the Co oxide in Co/ZrMOF-M is distributed on the surface of the Zr-MOF in the form of porous particles,which may be the main reason why the catalytic activity of Co/Zr-MOF-M is higher than that of Co/ZrMOF-N. 展开更多
关键词 atmospheric-pressure cold plasma CO_(2) supported Co catalytic materials metal organic framework
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Recent Progress in Synthesis, Mechanism and Applications of Zinc-Based Metal-Organic Frameworks for Fluorescent Sensing
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作者 Xiaojing Mao Huachang Li +2 位作者 Jiemin Liu Yehong Shi Lijun Kuai 《American Journal of Analytical Chemistry》 2023年第9期390-409,共20页
As more and more pollutants threaten human health, it is necessary and essential to develop sensitive, accurate and rapid methods and sensory materials to detect harmful substance. Metal-organic frameworks (MOFs) are ... As more and more pollutants threaten human health, it is necessary and essential to develop sensitive, accurate and rapid methods and sensory materials to detect harmful substance. Metal-organic frameworks (MOFs) are inorganic-organic hybrids assembled from inorganic metal ions or clusters and suitable organic ligands. Zinc-based MOFs (Zn-MOFs) have emerged as one of the most promising sensory material of MOFs for practical applications, and attracted significant attention due to structural diversity and incomparable stability properties. However, there are few reviews on systemic summary of synthesis design, mechanism and application of Zn-MOFs. In this review, we summarize the synthesis design methods, structure types and luminescence mechanism of Zn-MOFs sensor recognition in the past ten years and their applications in metal cations, anions, organic compounds and other analytes. Finally, we present a short conclusion, and look forward to the future development direction of Zn-MOFs. 展开更多
关键词 metal-organic frameworks POLLUTANTS Sensory materials MECHANISM Application
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Synthesis of spherical tremella-like Sb2O3 structures derived from metal-organic framworks and its lithium storage properties 被引量:3
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作者 TAN Yu-ming CHEN Xian-hong +1 位作者 ZHU Yi-rong CHEN Li-juan 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1469-1480,共12页
A novel spherical tremella-like Sb2O3 was prepared by using metal-organic frameworks(MOFs)method under a mild liquid-phase reaction condition,and was further employed as an anode material for lithium-ion batteries(LIB... A novel spherical tremella-like Sb2O3 was prepared by using metal-organic frameworks(MOFs)method under a mild liquid-phase reaction condition,and was further employed as an anode material for lithium-ion batteries(LIBs).The effect of reaction temperature and time on morphologies of Sb2O3 was studied.The results from SEM and TEM demonstrate that the tremella-like Sb2O3 architecture are composed of numerous nanosheets with high specific surface area.When the tremella-like Sb2O3 was used as LIBs anode,the discharge and charge capacities can achieve 724 and 446 mA·h/g in the first cycle,respectively.Moreover,the electrode retains an impressive high capacity of 275 mA·h/g even after 50 cycles at 20 mA/g,indicating that the material is extremely promising for application in LIBs. 展开更多
关键词 antimony trioxide spherical tremella-like structure metal organic frameworks anode material lithium-ion batteries
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Metal–organic compounds as promising anode materials for potassium ion batteries: A mini review
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作者 Jinquan Wen Qian Liu +2 位作者 Ling Bai Zhen-Dong Huang Yanwen Ma 《Energy Reviews》 2024年第1期90-108,共19页
Potassium-ion batteries(PIBs)represent one of the most promising alternatives to lithium-ion batteries(LIBs),owing to their exceptional attributes such as high voltages,potent power capabilities,and cost-effectiveness... Potassium-ion batteries(PIBs)represent one of the most promising alternatives to lithium-ion batteries(LIBs),owing to their exceptional attributes such as high voltages,potent power capabilities,and cost-effectiveness.Nonetheless,challenges arise from the sluggish kinetics and significant volume expansion observed during the insertion/extraction of large-radii potassium ions,leading to subpar rate performance and considerable capacity degradation in potassium-ion batteries.Consequently,it becomes imperative to explore advanced anode materials exhibiting high electrochemical activity and robust structural stability.In this regard,the present review focuses on recent progress in metal-organic compounds(MOCs)as anode materials for potassium-ion batteries,systematically discussing their outstanding merits from the perspective of metal speciation.Additionally,the principal mechanism of K ion storage within relevant MOCs is presented.Furthermore,a comprehensive summary of existing drawbacks that hinder the broader application of MOCs-based materials is provided,along with proposed guidelines and strategies for addressing the inferior performance characteristics.This review serves to illuminate the development of MOCs-based anode materials for potassium-ion batteries and offers a valuable reference for future research endeavors. 展开更多
关键词 Potassium ion batteries Anode materials metal organic compounds metals organic frameworks
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Positional functionalizations of metal–organic frameworks through invasive ligand exchange and additory MOF-on-MOF strategies:A review
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作者 Daeyeon Lee Sangho Lee +1 位作者 Isaac Choi Min Kim 《Smart Molecules》 2024年第2期63-84,共22页
Metal–organic frameworks(MOFs)represent a unique class of porous materialswith tremendous potential for diverse applications.A key factor contributing totheir versatility is their ability to precisely introduce funct... Metal–organic frameworks(MOFs)represent a unique class of porous materialswith tremendous potential for diverse applications.A key factor contributing totheir versatility is their ability to precisely introduce functional groups at specificpositions within pores and crystals.This review explores two prominent strategiesfor achieving the positional functionalization of MOFs:post-synthetic ligand exchange(PSE)and MOF-on-MOF.In PSE,the existing ligands within solid-stateMOFs can be selectively replaced by the desired functional groups in solutionthrough ligand dynamics.This invasive functionalization provides a flexibleapproach to fine-tuning the surface of the MOFs with the target functionality.Conversely,MOF-on-MOF strategies are additive methodologies involving thecontrolled growth of one MOF layer onto another.The functionality of the core andshell(or surface)can be independently controlled.This review critically examinesthe examples,strengths,limitations,and applications of these strategies,emphasizingtheir significance in advancing the field of MOF functionalization andpaving the way for tailored multifunctional materials with precise and specificproperties. 展开更多
关键词 metalorganic frameworks(MOFs) MOF-on-MOF multifunctional materials porous coordination polymers(PCPs) post-synthetic exchanges(PSEs)
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Materials Studio在金属有机框架材料中气体吸附的应用 被引量:5
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作者 王宪飞 田林宇 +2 位作者 李潘之 陈小平 任万忠 《现代化工》 CAS CSCD 北大核心 2021年第11期34-38,43,共6页
综述了全尺度材料模拟软件(materials studio,MS)在MOFs中气体吸附方面的研究进展,重点介绍了MOFs中气体吸附模拟计算时MS软件各个模块的应用。对采用MS软件模拟计算MOFs中气体吸附性能提出了一些建议。
关键词 materials Studio软件 金属有机框架材料 吸附 分离 分子模拟
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Recent progress of advanced anode materials of lithium-ion batteries 被引量:19
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作者 Hui Cheng Joseph G.Shapter +1 位作者 Yongying Li Guo Gao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第6期451-468,I0011,共19页
The rapid development of electric vehicles and mobile electronic devices is the main driving force to improve advanced high-performance lithium ion batteries(LIBs).The capacity,rate performance and cycle stability of ... The rapid development of electric vehicles and mobile electronic devices is the main driving force to improve advanced high-performance lithium ion batteries(LIBs).The capacity,rate performance and cycle stability of LIBs rely directly on the electrode materials.As far as the development of the advanced LIBs electrode is concerned,the improvement of anode materials is more urgent than the cathode materials.Industrial production of anode materials superior to commercial graphite still faces some challenges.This review sets out the most basic LIBs anode material design.The reaction principles and structural design of carbon materials,various transition metal oxides,silicon and germanium are summarized,and then the progress of other anode materials are analyzed.Due to the rapid development of metal organic frameworks(MOFs)in energy storage and conversion in recent years,the synthesis process and energy storage mechanism of nanostructures derived from MOF precursors are also discussed.From the perspective of novel structural design,the progress of various MOFs-derived materials for alleviating the volume expansion of anode materials is discussed.Finally,challenges for the future development of advanced anode materials for LIBs will be considered. 展开更多
关键词 Anode materials LIBS NANOmaterialS metal organic frameworks
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Nanoporous metal organic framework materials for hydrogen storage 被引量:4
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作者 Bo Xiao Qingchun Yuan 《Particuology》 SCIE EI CAS CSCD 2009年第2期129-140,共12页
Hydrogen is expected to play an important role in future transportation as a promising alternative clean energy source to carbon-based fuels. One of the key challenges to commercialize hydrogen energy is to develop ap... Hydrogen is expected to play an important role in future transportation as a promising alternative clean energy source to carbon-based fuels. One of the key challenges to commercialize hydrogen energy is to develop appropriate onboard hydrogen storage systems, capable of charging and discharging large quantities of hydrogen with fast enough kinetics to meet commercial requirements. Metal organic framework (MOF) is a new type of inorganic and organic hybrid nanoporous particulate materials. Its diverse networks can enhance hydrogen storage through tuning the structure and property of MOFs. The MOF materials so far developed adsorb hydrogen through weak dispersion interactions, which allow significant quantity of hydrogen to be stored at cryogenic temperatures with fast kinetics. Novel MOFs are being developed to strengthen the interactions between hydrogen and MOFs in order to store hydrogen under ambient conditions. This review surveys the development of such candidate materials, their performance and future research needs. 展开更多
关键词 Hydrogen storage metal organic framework Nanoporous particulate materials
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Investigating metal-organic framework as a new pseudo-capacitive material for supercapacitors 被引量:15
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作者 Long Kang Shi-Xiong Sun +2 位作者 Ling-Bin Kong Jun-Wei Lang Yong-Chun Luo 《Chinese Chemical Letters》 SCIE CAS CSCD 2014年第6期957-961,共5页
A new application of metal organic framework (MOF) as a pseudo-capacitive material for supercapacitors is investigated. To this end, a simple nickel-based MOF, formulated Ni3(btc)2.12H2O, is synthesized via a hydr... A new application of metal organic framework (MOF) as a pseudo-capacitive material for supercapacitors is investigated. To this end, a simple nickel-based MOF, formulated Ni3(btc)2.12H2O, is synthesized via a hydrothermal reaction. As an electro-active material, such nickel-based MOF exhibits superior pseudo- capacitive behavior in KOH aqueous electrolyte with a high specific capacitance of 726 F g-1. Also, it displays good electrochemical stability with 94.6% of the initial capacitance over consecutive 1000 cycles. In addition, a simple asymmetric supercapacitor with a high energy density of 16.5 Wh kg-1 is successfully built using the nickel-based MOF as positive electrode and commercial activated carbon as negative electrode in KOH electrolyte. 展开更多
关键词 SUPERCAPACITOR Pseudo-capacitive material metal-organic framework Energy storage
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Metal-organic framework based nanomaterials for electrocatalytic oxygen redox reaction 被引量:8
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作者 Kexin Zhang Wenhan Guo +1 位作者 Zibin Liang Ruqiang Zou 《Science China Chemistry》 SCIE EI CAS CSCD 2019年第4期417-429,共13页
Due to the severe environmental issues, many advanced technologies, typically fuel cells and metal-air batteries have aroused widespread concerns and been intensively studied in recent years. However, oxygen redox rea... Due to the severe environmental issues, many advanced technologies, typically fuel cells and metal-air batteries have aroused widespread concerns and been intensively studied in recent years. However, oxygen redox reactions including oxygen evolution reaction(OER) and oxygen reduction reaction(ORR) as the core reactions suffer from sluggish kinetics of the multiple electron transfer process. Currently, Pt, RuO_2, and IrO_2 are considered to be the benchmark catalysts for ORR and OER, but their high price, scarcity and instability hinder them from large-scale application. To overcome these limits, exploring alternative electrocatalysts with low cost, high activity, long-term stability, and earth-abundance is of extreme urgency. Metal-organic frameworks(MOFs) are a family of inorganic-organic hybrid materials with high surface areas and tunable structures, making them proper as catalyst candidates. Herein, the recent progress of MOFs and MOF-derived materials for ORR and OER is systematically reviewed, and the relationship between compositions and electrochemical performance is discussed. It is expected that this review can be helpful for the future development of related MOF-based materials with excellent electrochemical performance. 展开更多
关键词 metal-organic frameworks OXYGEN evolution REACTION OXYGEN reduction REACTION earth-abundant materials ELECTROCATALYSIS NANOmaterialS
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Polydopamine-coated metal-organic framework-based composite phase change materials for photothermal conversion and storage 被引量:1
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作者 Ang Li Mengke Huang +6 位作者 Die Hu Zhaodi Tang Jianhang Xu Yang Li Xiaowei Zhang Xiao Chen Ge Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第8期343-347,共5页
The liquid leakage and weak solar absorption capacity of organic phase change materials(PCMs)seriously hinder the efficient utilization of solar energy and thermal energy storage.To address these issues,we prepared na... The liquid leakage and weak solar absorption capacity of organic phase change materials(PCMs)seriously hinder the efficient utilization of solar energy and thermal energy storage.To address these issues,we prepared nanoporous metal organic framework(Ni-MOF)for the vacuum infiltration of paraffin wax(PW),followed by the coating of solar-absorbing functional polydopamine(PDA)on the surface of PW@MOF for photothermal conversion and storage.As an efficient photon harvester,PDA coating endows PW@MOF/PDA composite PCMs with excellent photothermal conversion and storage properties due to the robust broadband solar absorption capability in the UV–vis region.Resultantly,our prepared PW@MOF/PDA composite PCMs exhibit a high photothermal conversion and storage efficiency of 91.2%,while that of PW@MOF composite PCMs is only zero.In addition,PW@MOF/PDA composite PCMs also exhibit excellent thermal stability,shape stability,energy storage stability,and photothermal conversion stability.More importantly,this coating strategy is universal by integrating different MOFs and solar absorbers,showing the potential to accelerate the major breakthroughs of high-efficiency MOF-based photothermal composite PCMs in solar energy utilization. 展开更多
关键词 Phase change materials metal organic frameworks Photothermal conversion Thermal energy storage Photon harvester
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Metal/covalent organic frameworks for aqueous rechargeable zinc-ion batteries 被引量:2
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作者 Hu Hong Xun Guo +3 位作者 Jiaxiong Zhu Zhuoxi Wu Qing Li Chunyi Zhi 《Science China Chemistry》 SCIE EI CSCD 2024年第1期247-259,共13页
Lithium-ion batteries(LIBs)have become one of the most successful energy storage systems due to their high operating voltage,high energy density,and long cycle life.However,with the widespread use of LIBs in recent de... Lithium-ion batteries(LIBs)have become one of the most successful energy storage systems due to their high operating voltage,high energy density,and long cycle life.However,with the widespread use of LIBs in recent decades,lithium resources are at risk of being exhausted.Therefore,it is necessary to find a substitute for LIBs to meet the needs of future large-scale energy storage systems.Because of their competitiveness,low cost,and high safety,aqueous rechargeable zinc-ion batteries(ARZIBs)are regarded as promising components in the post-lithium-ion-battery era.Given the tunable composition,ordered porous channels,and controllable structure of metal-organic frameworks(MOFs)and covalent organic frameworks(COFs),these frameworks are viewed as potential materials for developing high-performance ARZIBs.In this review,we focus on the recent developments in the applications of MOF-/COF-based materials in ARZIBs,including in electrode materials,anode modifications,separators,and solid electrolytes.We then focus on the critical factors and optimization techniques of MOF-/COF-based materials that affect the performance of ARZIBs.Finally,we conclude with some projections for the expansion of ARZIBs containing MOF-/COF-based materials. 展开更多
关键词 metal/covalent organic frameworks aqueous zinc-ion batteries electrode materials anode modifications SEPARATORS electrolytes
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Rational design of new in situ reduction of Ni(II)catalytic system for low-cost and large-scale preparation of porous aromatic frameworks
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作者 Shanshan Wang Yue Wu +3 位作者 Wenxiang Zhang Hao Ren Guangshan Zhu Heping Ma 《Carbon Energy》 SCIE EI CAS CSCD 2024年第5期105-113,共9页
Porous aromatic framework 1(PAF-1)is an extremely representative nanoporous organic framework owing to its high stability and exceptionally high surface area.Currently,the synthesis of PAF-1 is catalyzed by the Ni(COD... Porous aromatic framework 1(PAF-1)is an extremely representative nanoporous organic framework owing to its high stability and exceptionally high surface area.Currently,the synthesis of PAF-1 is catalyzed by the Ni(COD)2/COD/bpy system,suffering from great instability and high cost.Herein,we developed an in situ reduction of the Ni(II)catalytic system to synthesize PAF-1 in low cost and high yield.The active Ni(0)species produced from the NiCl_(2)/bpy/NaI/Mg catalyst system can effectively catalyze homocoupling of tetrakis(4-bromophenyl)methane at the room temperature to form PAF-1 with high Brunauer-Emmett-Teller(BET)-specific surface area up to 4948 m^(2) g^(−1)(Langmuir surface area,6785 m2 g−1).The possible halogen exchange and dehalogenation coupling mechanisms for this new catalytic process in PAF's synthesis are discussed in detail.The efficiency and universality of this innovative catalyst system have also been demonstrated in other PAFs'synthesis.This work provides a cheap,facile,and efficient method for scalable synthesis of PAFs and explores their application for high-pressure storage of Xe and Kr. 展开更多
关键词 adsorption carbon material nickel catalysis porous aromatic framework porous organic polymer
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Metal–organic frameworks with aggregation-induced emission
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作者 Hang Xu Peng Cheng 《Aggregate》 EI CAS 2024年第3期127-141,共15页
Aggregation-induced emission(AIE)materials exhibit remarkable emission in the aggregated or solid state while demonstrating minimal emission in dilute solutions.In contrast to conventional luminescent materials,AIE lu... Aggregation-induced emission(AIE)materials exhibit remarkable emission in the aggregated or solid state while demonstrating minimal emission in dilute solutions.In contrast to conventional luminescent materials,AIE luminogens(AIEgens)offer several advantages in the aggregate state,including high quantum yield,excel-lent photostability,and low background signals,making them highly promising for diverse applications.Integrating AIEgens into designable metal–organic frame-works(MOFs)enables tunable and well-ordered AIE materials,allowing for precise control over photophysical properties and deeper exploration of AIE mechanisms.Numerous AIE MOFs have been constructed and investigated,and several reviews focus on their structure design and applications in sensing and bioimaging.This review highlights the state-of-the-art advancements in AIE MOFs,including mech-anisms,design strategies,and applications in chemical sensing,bioimaging,and disease therapy.The challenges associated with practical applications of AIE MOFs are also addressed,with an emphasis on their large-scale production involved interdisciplinary collaboration.This comprehensive review aims at guiding further development of AIE MOFs and promoting their practical applications in analysis,healthcare,and other luminescence relatedfields. 展开更多
关键词 aggregation-induced emission luminescent materials metalorganic frameworks
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Recent advances on porous organic frameworks for the adsorptive removal of hazardous materials 被引量:15
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作者 Shi-Wen Lv Jing-Min Liu +4 位作者 Zhi-Hao Wang Hui Ma Chun-Yang Li Ning Zhao Shuo Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第6期169-185,共17页
Environmental pollution is one of the most serious problems facing mankind today,and has attracted widespread attention worldwide. The burgeoning class of crystalline porous organic framework materials, metal–organic... Environmental pollution is one of the most serious problems facing mankind today,and has attracted widespread attention worldwide. The burgeoning class of crystalline porous organic framework materials, metal–organic frameworks and covalent organic frameworks present promising application potential in areas related to pollution control due to their interesting surface properties. In this review, the literature of the past five years on the adsorptive removal of various hazardous materials, mainly including heavy metal ions, harmful gases, organic dyes, pharmaceutical and personal care products, and radionuclides from the environment by using COFs and MOFs, is summarized. The adsorption mechanisms are also discussed to help understand their adsorption performance and selectivity. Additionally, some insightful suggestions are given to enhance the performance of MOFs and COFs in the adsorptive removal of various hazardous materials. 展开更多
关键词 metal-organic frameworks COVALENT organic frameworks ADSORPTIVE REMOVAL Hazardous materials
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Nickel-based metal-organic framework-derived whisker-shaped nickel phyllosilicate toward efficiently enhanced mechanical,flammable and tribological properties of epoxy nanocomposites 被引量:2
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作者 Yuxuan Xu Guanglong Dai +4 位作者 Shibin Nie Jinian Yang Song Liu Hong Zhang Xiang Dong 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2022年第10期1493-1504,共12页
Metal−organic framework-derived materials have attracted significant attention in the applications of functional materials.In this work,the rod-like nickel-based metal−organic frameworks were first synthesized and sub... Metal−organic framework-derived materials have attracted significant attention in the applications of functional materials.In this work,the rod-like nickel-based metal−organic frameworks were first synthesized and subsequently employed as the hard templates and nickel sources to prepare the whisker-shaped nickel phyllosilicate using a facile hydrothermal technology.Then,the nickel phyllosilicate whiskers were evaluated to enhance the mechanical,thermal,flammable,and tribological properties of epoxy resin.The results show that adequate nickel phyllosilicate whiskers can disperse well in the matrix,improving the tensile strength and elastic modulus by 13.6%and 56.4%,respectively.Although the addition of nickel phyllosilicate whiskers could not obtain any UL-94 ratings,it enhanced the difficulty in burning the resulted epoxy resin nanocomposites and considerably enhanced thermal stabilities.Additionally,it was demonstrated that such nickel phyllosilicate whiskers preferred to improve the wear resistance instead of the antifriction feature.Moreover,the wear rate of epoxy resin nanocomposites was reduced significantly by 80%for pure epoxy resin by adding 1 phr whiskers.The as-prepared nickel phyllosilicate whiskers proved to be promising reinforcements in preparing of high-performance epoxy resin nanocomposites. 展开更多
关键词 metalorganic framework nickel phyllosilicate WHISKER epoxy resin mechanical response tribological performance flammable property
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金属有机框架材料在骨组织工程和骨科疾病治疗中的多重应用
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作者 刘云翔 张晓玉 +3 位作者 李昊 张荣 李利平 陈崇伟 《中国组织工程研究》 CAS 北大核心 2025年第10期2151-2161,共11页
背景:金属有机框架材料因其可调节的孔隙率、较大的表面积、生物相容性良好和结构多样等独特的性质在骨组织工程和骨疾病治疗中展现出巨大的应用前景。目的:综述金属有机框架材料在骨修复、关节炎、骨感染和骨肿瘤中的研究进展、运用及... 背景:金属有机框架材料因其可调节的孔隙率、较大的表面积、生物相容性良好和结构多样等独特的性质在骨组织工程和骨疾病治疗中展现出巨大的应用前景。目的:综述金属有机框架材料在骨修复、关节炎、骨感染和骨肿瘤中的研究进展、运用及优缺点,为后续研究提供参考及策略。方法:检索Web of science、Pub Med和中国知网数据库,英文检索词为“Metal-Organic Frameworks,MOFs,Orthopedics,Bone Repair,Bone Regeneration,Orthopaedic Applications,Bone Tissue Engineering,Bone Infection,Arthritis,Bone Tumor,Osteosarcoma”,中文检索词为“金属有机框架,骨科,骨修复,骨再生,骨科应用,骨组织工程,骨感染,关节炎,骨肿瘤,骨肉瘤”,检索了2015-2023年的相关文献。根据纳入与排除标准对所有文献进行初筛后,最终纳入72篇文章进行综述。结果与结论:(1)在促进骨修复过程中,金属有机框架材料中的金属离子中心能够激活相应信号通路,从而通过促进成骨基因的表达、抑制破骨细胞、促进血管生成、加速骨矿化进程4个方面促进成骨,因此,以钙、锶、钴、铜和镁离子等金属离子作为金属中心的金属有机框架材料在改善骨缺损植入物的性能方面具有很大潜力。(2)以锌/钴金属有机框架为代表的金属有机框架材料能发挥类细胞保护酶的活性,清除活性氧,促进软骨再生,与天然酶相比具有不易失活和更好的稳定性等优势。(3)锌基金属有机框架材料凭借宽带隙、光生载流子的有效分离迁移以及高稳定性的特点,在光催化领域表现出色,广泛用于细菌及肿瘤细胞的杀灭。(4)双金属金属有机框架材料由于额外金属的掺杂,导致结构性能发生优化而具有关键优势,例如锌/镁金属有机框架74具有更高的稳定性进而实现持续抗菌,钽/锆金属有机框架光吸收能力及光催化效率的增加,成为了放疗增敏剂。(5)然而,金属有机框架材料在临床应用中仍面临诸如药物释放的不确定性、生物体内安全性及长期存在可能诱发的免疫反应等挑战. 展开更多
关键词 金属有机框架材料 骨组织工程 骨修复 骨感染 关节炎 骨肿瘤 MOFS
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